| Literature DB >> 30519558 |
Wei Zhang1, Xiaoya Ma1, Cheng Zhong1,2, Tianyi Ma3, Yida Deng1,2, Wenbin Hu1,2, Xiaopeng Han1,4,5.
Abstract
It is extremely meaningful to develop cheap, highly efficient, and stable bifunctional electrocatalysts for bothEntities:
Keywords: HER/OER; cobalt sulfide; composite; graphene; nanoparticle; water splitting
Year: 2018 PMID: 30519558 PMCID: PMC6258795 DOI: 10.3389/fchem.2018.00569
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 1(a) XRD, (b) SEM, (c) TEM image, and (d) elemental mapping of CoS2@N-GN hybrid. Inset in (a) shows the crystal structure of pyrite-type CoS2. Inset in (c) shows the HRTEM image.
Figure 2(A) XPS survey, (B) N 1s, (c) Co 2p, and (D) S 2p XPS spectra of the CoS2@N-GN hybrid.
Figure 3(A) OER LSVs of CoS2@N-GN, CoS2/N-GN, pure CoS2 in 1.0 M KOH at a scanning rate of 5 mV s−1. (B) Corresponding Tafel curves. (C) Nyquist plots of EIS at the potential of 1.56 V. (D) Polarization curves of CoS2@N-GN before and after 1000 cycles. (E) Chronopotentiometric response of CoS2@N-GN at a constant current density of 10 mA cm−2. (F) SEM image of the CoS2@N-GN catalyst after OER for 1000 cycles.
Summary of the electrochemical activities of CoS2@N-GN, CoS2/N-GN and pure CoS2 electrodes.
| CoS2@N-GN | OER | 51.8 | 243 | 1.85 | 76.7 |
| HER | 108.5 | 204 | |||
| CoS2/N-GN | OER | 71.6 | 307 | 3.2 | 20.1 |
| HER | 139.1 | 278 | |||
| pure CoS2 | OER | 81.4 | 327 | 4.02 | 13.6 |
| HER | 144.7 | 297 |
Figure 4(A) HER LSV curves of CoS2@N-GN, CoS2/N-GN, pure CoS2 in 1.0 M KOH at a scanning rate of 5 mV s−1. (B) Corresponding Tafel slopes. (C) HER polarization curves of CoS2@N-GN before and after 1,000 cycles. (D) Chronopotentiometric response of CoS2@N-GN at a constant current density of 10 mA cm−2.
Figure 5(A) Overall water splitting performance of N-GP@CoS2 at different temperatures. (B) The photograph of gas evolution at 10 mA cm−2. (C) Chronoamperometric response of two overall water splitting systems at 1.9 V. (D) The volumes of H2 and O2 experimentally measured and theoretically calculated vs. time at 10 mA cm−2.